Clagnan Elisa, D'Imporzano Giuliana, Dell'Orto Marta, Bani Alessia, Dumbrell Alex J, Parati Katia, Acién-Fernández Francisco Gabriel, Portillo-Hahnefeld Agustín, Martel-Quintana Antera, Gómez-Pinchetti Juan Luis, Adani Fabrizio
Gruppo Ricicla labs., Dipartimento di Scienze Agrarie e Ambientali - Produzione, Territorio, Agroenergia (DiSAA), Università degli studi di Milano, Via Celoria 2, 20133, Italy.
Gruppo Ricicla labs., Dipartimento di Scienze Agrarie e Ambientali - Produzione, Territorio, Agroenergia (DiSAA), Università degli studi di Milano, Via Celoria 2, 20133, Italy.
Bioresour Technol. 2022 Nov;363:127979. doi: 10.1016/j.biortech.2022.127979. Epub 2022 Sep 17.
Centrate is a low-cost alternative to synthetic fertilizers for microalgal cultivation, reducing environmental burdens and remediation costs. Adapted microalgae need to be selected and characterised to maximise biomass production and depuration efficiency. Here, the performance and composition of six microalgal communities cultivated both on synthetic media and centrate within semi-open tubular photobioreactors were investigated through Illumina sequencing. Biomass grown on centrate, exposed to a high concentration of ammonium, showed a higher quantity of nitrogen (5.6% dry weight) than the biomass grown on the synthetic media nitrate (3.9% dry weight). Eukaryotic inocula were replaced by other microalgae while cyanobacterial inocula were maintained. Communities were generally similar for the same inoculum between media, however, inoculation with cyanobacteria led to variability within the eukaryotic community. Where communities differed, centrate resulted in a higher richness and diversity. The higher nitrogen of centrate possibly led to higher abundance of genes coding for N metabolism enzymes.
浓缩液是微藻培养中合成肥料的低成本替代品,可减轻环境负担和修复成本。需要选择和表征适应性微藻,以实现生物质产量和净化效率最大化。在此,通过Illumina测序研究了在半开放式管状光生物反应器中,在合成培养基和浓缩液上培养的六个微藻群落的性能和组成。在浓缩液上生长的生物质暴露于高浓度铵中,其氮含量(干重的5.6%)高于在合成培养基硝酸盐上生长的生物质(干重的3.9%)。真核接种物被其他微藻取代,而蓝细菌接种物保持不变。对于相同接种物,不同培养基之间的群落总体相似,然而,接种蓝细菌导致真核群落内出现变异性。在群落存在差异的地方,浓缩液导致更高的丰富度和多样性。浓缩液中较高的氮含量可能导致编码氮代谢酶的基因丰度更高。